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System Dynamics Simulation of Selected Composite Landfill Liners for Leachate Containment

机译:选定的用于垃圾渗滤液的复合垃圾填埋场衬管的系统动力学模拟

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摘要

The disposal of wastes through landfiling is becoming increasingly acceptable worldwide. Its attendant leachate pollution is however a source of concern to the 21st century environmental engineering researchers. This paper therefore focuses on the application of system dynamics modeling technique in simulating the breakthrough times of selected composite liners in order to determine their effectiveness in leachate containment. Four (4) composite liners were studied viz: High Density Polyethylene (HDPE) and Low Density Polyethylene (LDPE); Geotextile and Geonet; Geosynthetic Clay Liner (GCL) and Compacted Clay Liner (CCL); and Silt and Sand. Governing equations coded in Visual Basic computer programming language based on the principles of system dynamics modeling was applied in the determination of retention abilities of the selected liners. Notable properties of the liners like Hydraulic Conductivity, Permeability, Porosity and Hydraulic Head were employed in model validation. Other inputs include the Thickness, Placement Slope and Insertion Depth of the liners. The interrelationship of the properties and breakthrough times was determined through simulation processes using STELLA 9.1.4 software.of the composite liners studied, HDPE-LDPE combination was found to be the most effective with the longest breakthrough time. The Geotextile-Geonet combination however has the highest leakage rate. The study therefore recommends the use HDPE-LDPE liner combination for use in landfill leachate retention. Keywords: system dynamics, leachate, landfill, composite liner, breakthrough time
机译:通过填埋处理废物在世界范围内变得越来越被接受。然而,随之而来的渗滤液污染却是21世纪环境工程研究人员关注的问题。因此,本文着重于系统动力学建模技术在模拟所选复合衬砌的穿透时间,以确定其在渗滤液围堵中的有效性方面的应用。研究了四(4)种复合衬里:高密度聚乙烯(HDPE)和低密度聚乙烯(LDPE);土工布和土工网;土工合成粘土衬里(GCL)和压实粘土衬里(CCL);和淤泥和沙子。基于系统动力学建模原理,以Visual Basic计算机编程语言编码的控制方程式已用于确定所选衬管的保持力。在模型验证中采用了衬里的显着特性,如水力传导率,渗透率,孔隙率和水力压头。其他输入包括衬管的厚度,放置斜率和插入深度。使用STELLA 9.1.4软件通过模拟过程确定了性能和穿透时间之间的相互关系。在研究的复合衬里中,发现HDPE-LDPE组合是最有效的,穿透时间最长。然而,土工织物-土工网的组合具有最高的泄漏率。因此,研究建议将HDPE-LDPE衬里组合物用于垃圾渗滤液的保留。关键词:系统动力学渗滤液垃圾填埋复合衬里突破时间

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